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Descriptions du produit

Présentation de l'éditeur

Many students, engineers, scientists and researchers have benefited from the practical, programming–oriented style of the previous editions of Programming the Finite Element Method, learning how to develop computer programs to solve specific engineering problems using the finite element method.

This new fifth edition offers timely revisions that include programs and subroutine libraries fully updated to Fortran 2003, which are freely available online, and provides updated material on advances in parallel computing, thermal stress analysis, plasticity return algorithms, convection boundary conditions, and interfaces to third party tools such as ParaView, METIS and ARPACK.  As in the previous editions, a wide variety of problem solving capabilities are presented including structural analysis, elasticity and plasticity, construction processes in geomechanics, uncoupled and coupled steady and transient fluid flow and linear and nonlinear solid dynamics.

Key features:

• Updated to take into account advances in parallel computing  as well as new material on thermal stress analysis
• Programs use an updated version of Fortran 2003
• Includes exercises for students
• Accompanied by website hosting software

Programming the Finite Element Method, Fifth Edition is an ideal textbook for undergraduate and postgraduate students in civil and mechanical engineering, applied mathematics and numerical analysis, and is also a comprehensive reference for researchers and practitioners.

Further information and source codes described in this text can be accessed at the following web sites:
• www.inside.mines.edu/∼vgriffit /PFEM5 for the serial programs from Chapters 4–11
www.parafem.org.uk for the parallel programs from Chapter 12

Quatrième de couverture

Many students, engineers, scientists and researchers have benefited from the practical, programming–oriented style of the previous editions of Programming the Finite Element Method, learning how to develop computer programs to solve specific engineering problems using the finite element method.

This new fifth edition offers timely revisions that include programs and subroutine libraries fully updated to Fortran 2003, which are freely available online, and provides updated material on advances in parallel computing, thermal stress analysis, plasticity return algorithms, convection boundary conditions and interfaces to third–party tools such as ParaView, METIS and ARPACK.  As in the previous editions a wide variety of problem–solving capabilities are presented, including structural analysis, elasticity and plasticity, construction processes in geomechanics, uncoupled and coupled steady and transient fluid flow and linear and non–linear solid dynamics. 

Key features:

  • Updated to take into account advances in parallel computing  as well as new material on thermal stress analysis
  • Programs use an updated version of Fortran 2003
  • Includes exercises for students
  • Accompanied by website hosting software

Programming the Finite Element Method, Fifth Edition is an ideal textbook for undergraduate and postgraduate students in civil and mechanical engineering, applied mathematics and numerical analysis, and is also a comprehensive reference for researchers and practitioners.

Further information and source codes described in this text can be accessed at the following websites:

  • inside.mines.edu/∼vgriffit /PFEM5 for the serial programs from Chapters 4–11
  • www.parafem.org.uk for the parallel programs from Chapter 12


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Couverture | Copyright | Table des matières | Extrait | Index | Quatrième de couverture
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2 internautes sur 2 ont trouvé ce commentaire utile 
Continues to remain a classic 14 avril 2014
Par Paul G. Joseph - Publié sur Amazon.com
Format: Relié Achat vérifié
As soon as the first edition of this book was first released in the mid-eighties, it instantly became a classic. To the dedicated student, it offered a quick way of getting to the heart of an otherwise arcane subject--the finite element method. It allowed such a student to learn on their own, how to reach a high level of expertise, where they could not just use finite element programs, but more, much more, program their own constitutive models and use them in their own finite element programs. The "building block" approach pioneered here was useful when it was first released, and continues to be useful to me now, almost 30 years later! What's more, the present edition, the fifth, is much improved over the earlier ones, retaining the same unpretentious style as the original, but with many more examples, including the good old chestnuts included in the first edition. The source code and instructions on how to use it are freely and easily available on the internet. Kudos to all those involved with this book!
1 internautes sur 1 ont trouvé ce commentaire utile 
Great book for fully understanding FEM 30 mai 2014
Par Staszek - Publié sur Amazon.com
Format: Relié Achat vérifié
Excellent book on programming FEM with Fortran. All the theory is there and nicely explained. I do not recommend this book to people who are just starting to learn programming or FEM as many of the basic ideas behind FEM (strong/weak formulation) are skipped thorough or not mentioned. This said, if you already know the basic theory then this book is great. The algorithms used are fast and effective, lots of advanced methods and elements are explained (non-linier analysis, eigenvalue problems, dynamics).
All in all, a great book.
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